In the standard hot big bang model, the expansion of the early universe is given by the Friedmann equation with an energy density dominated by relativistic particles. Since in a variety of models this equation is altered, we introduce modifications in the Friedmann equation and show that we can constrain them using big bang nucleosynthesis data. When there is no neutrino/antineutrino asymmetry these modifications are tightly bounded but in presence of an asymmetry the bounds become much looser. As an illustration, we apply our results to a model where the second and third families couple to gravity differently than the first family (non-universal gravity)
For a brief time in its early evolution the Universe was a cosmic nuclear reactor. The expansion and...
The Cardassian universe is a proposed modification to the Friedmann equation in which the universe i...
We study flavor oscillations in the early Universe, assuming primordial neutrino-antineutrino asymme...
This paper is devoted to investigate the implications of Einstein-Aether and modified Hořava–Lifshit...
We review the cosmology and physics underlying Primordial Nucleosynthesis and survey current observa...
. A massive long-lived ø neutrino in the MeV regime modifies the primordial light-element abundances...
We have performed new big bang nucleosynthesis calculations, which employ arbitrarily specified, tim...
We report on calculations of primordial nucleosynthesis in baryon-number inhomogeneous big bang mode...
We study here the effect of a varying G on the evolution of the early universe and, in particular, o...
International audiencePrimordial nucleosynthesis, or Big Bang Nucleosynthesis (BBN), is one of the t...
We constrain proposed phenomenological models for a vacuum energy which decays with the expansion of...
We use Big Bang Nucleosynthesis (BBN) observational data on the primordial abundance of light elemen...
Abstract. The present status of the standard Big Bang Nucleosynthesis (BBN) is here reviewed by comp...
The Hubble expansion of galaxies, the $2.73\dK$ blackbody radiation background and the cosmic abunda...
The cosmic energy density in the form of radiation before and during Big Bang Nucleosynthesis (BBN) ...
For a brief time in its early evolution the Universe was a cosmic nuclear reactor. The expansion and...
The Cardassian universe is a proposed modification to the Friedmann equation in which the universe i...
We study flavor oscillations in the early Universe, assuming primordial neutrino-antineutrino asymme...
This paper is devoted to investigate the implications of Einstein-Aether and modified Hořava–Lifshit...
We review the cosmology and physics underlying Primordial Nucleosynthesis and survey current observa...
. A massive long-lived ø neutrino in the MeV regime modifies the primordial light-element abundances...
We have performed new big bang nucleosynthesis calculations, which employ arbitrarily specified, tim...
We report on calculations of primordial nucleosynthesis in baryon-number inhomogeneous big bang mode...
We study here the effect of a varying G on the evolution of the early universe and, in particular, o...
International audiencePrimordial nucleosynthesis, or Big Bang Nucleosynthesis (BBN), is one of the t...
We constrain proposed phenomenological models for a vacuum energy which decays with the expansion of...
We use Big Bang Nucleosynthesis (BBN) observational data on the primordial abundance of light elemen...
Abstract. The present status of the standard Big Bang Nucleosynthesis (BBN) is here reviewed by comp...
The Hubble expansion of galaxies, the $2.73\dK$ blackbody radiation background and the cosmic abunda...
The cosmic energy density in the form of radiation before and during Big Bang Nucleosynthesis (BBN) ...
For a brief time in its early evolution the Universe was a cosmic nuclear reactor. The expansion and...
The Cardassian universe is a proposed modification to the Friedmann equation in which the universe i...
We study flavor oscillations in the early Universe, assuming primordial neutrino-antineutrino asymme...